ASME B89 4 10360 2-2008 Acceptance Test and Reverification Test for Coordinate Measuring Machines (CMMs) Part 2 CMMs Used for Measuring Linear Dimensions《坐标测量机(CMMs)用验收试验和重新认证试验 第2_1.pdf
《ASME B89 4 10360 2-2008 Acceptance Test and Reverification Test for Coordinate Measuring Machines (CMMs) Part 2 CMMs Used for Measuring Linear Dimensions《坐标测量机(CMMs)用验收试验和重新认证试验 第2_1.pdf》由会员分享,可在线阅读,更多相关《ASME B89 4 10360 2-2008 Acceptance Test and Reverification Test for Coordinate Measuring Machines (CMMs) Part 2 CMMs Used for Measuring Linear Dimensions《坐标测量机(CMMs)用验收试验和重新认证试验 第2_1.pdf(80页珍藏版)》请在麦多课文档分享上搜索。
1、Acceptance Test and Reverification Test for Coordinate Measuring Machines (CMMs) Part 2: CMMs Used for Measuring Linear DimensionsAN AMERICAN NATIONAL STANDARDASME B89.4.10360.2-2008ASME B89.4.10360.2-2008 Acceptance Test and Reverification Test for Coordinate Measuring Machines (CMMs) Part 2: CMMs
2、Used for Measuring Linear Dimensions Date of Issuance: July 11, 2008 This Technical Report will be revised when the Society approves the issuance of a new edition. There will be no addenda issued to this edition. ASME issues written replies to inquiries concerning interpretations of technical aspect
3、s of this Report. Interpretations are published on the ASME Website under the Committee Pages at http:/cstools.asme.org as they are issued. ASME is the registered trademark of The American Society of Mechanical Engineers. ASME does not “approve,” “rate”, or “endorse” any item, construction, propriet
4、ary device or activity. ASME does not take any position with respect to the validity of any patent rights asserted in connection with any items mentioned in this document, and does not undertake to insure anyone utilizing a standard against liability for infringement of any applicable letters patent
5、, nor assume any such liability. Users of a code or standard are expressly advised that determination of the validity of any such patent rights, and the risk of infringement of such rights, is entirely their own responsibility. Participation by federal agency representative(s) or person(s) affiliate
6、d with industry is not to be interpreted as government or industry endorsement of this code or standard. ASME accepts responsibility for only those interpretations of this document issued in accordance with the established ASME procedures and policies, which precludes the issuance of interpretations
7、 by individuals. No part of this document may be reproduced in any form, in an electronic retrieval system or otherwise, without the prior written permission of the publisher. The American Society of Mechanical Engineers Three Park Avenue, New York, NY 10016-5990 Copyright 2008 by THE AMERICAN SOCIE
8、TY OF MECHANICAL ENGINEERS All rights reserved Printed in the U.S.A. iiiASME B89.4.10360.2 Acceptance test and reverification test for coordinate measuring machines (CMMs) Part 2: CMMs used for measuring linear dimensions. The ASME B89.4.10360.2 Technical Report is based on, and is compliant with, t
9、he finaldraft International Standard (FDIS) ISO 10360-2, expected to be published as anInternational Standard in 2009. The ISO FDIS text appears verbatim in this TechnicalReport. Whenever the phrase “International Standard” appears, it refers to the ISO 10360-2FDIS document. Additional requirements
10、and information specific to the ASMEB89.4.10360.2 Technical Report are included in bordered text boxes such as this one.Normative material is a fundamental part of the ASME B89.4.10360.2 Technical Report and,if applicable, supersedes the corresponding ISO 10360-2 normative text. In particular, there
11、are a few cases where text appearing in ISO 10360-2 is in conflict with the Normative text ofASME B89.4.10360.2, and accordingly the ASME B89.4.10360.2 requirements shall govern.The corresponding ISO text has been put into a “strikeout” (strikeout) font in those cases.Informative material in this Te
12、chnical Report is meant to provide additional benefit for thereader. The ISO text, figures, and tables have been reprinted in ASME B89.4.10360.2 withpermission of ANSI. ivINTENTIONALLY LEFT BLANK v Contents Page Foreword . vii Committee Roster . viii Introduction ix 1 Scope 1 2 Normative references
13、2 3 Terms and definitions . 2 4 Symbols 6 5 Environmental and metrological requirements 7 5.1 Environmental conditions 7 5.2 Operating conditions 9 5.3 Length measurement error, EL. 9 5.4 Repeatability range of the length measurement error, R0. 9 5.5 Workpiece loading effects 10 6 Acceptance tests a
14、nd reverification tests 10 6.1 General . 10 6.2 Principle 12 6.3 Length measurement error with zero ram axis stylus tip offset, E0. 12 6.3.1 General . 12 6.3.2 Measuring equipment . 12 6.3.3 Procedure. 13 6.3.4 Derivation of test results 15 6.4 Repeatability range of the length measurement error, R0
15、. 16 6.5 Length measurement error with ram axis stylus tip offset of length 150 mm, E15016 6.5.1 Measuring equipment . 16 6.5.2 Procedure. 16 6.5.3 Derivation of test results 19 6.6 Dual ram CMMs 19 6.6.1 Simplex operating mode. 19 6.6.2 Duplex operating mode. 19 7 Compliance with specifications. 20
16、 7.1 Acceptance test . 20 7.1.1 Acceptance criteria . 20 7.1.2 Data rejection and repeated measurements. 21 7.2 Reverification test . 27 8 Applications . 27 8.1 Acceptance test . 27 8.2 Reverification test . 27 8.3 Interim check . 28 9 Indication in product documentation and data sheets 28 Annex A (
17、informative) Interim check 29 A.1 Interim check of the CMM. 29 7.1.3 Thermal derating of specifications 23vi A.2 Interim testing and the comparison to specifications .29 A.2.1 General29 A.2.2 Interim testing using uni-directional artefacts30 Annex B (normative) Artefacts that represent a calibrated
18、test length 31 B.1 General31 B.2 Bi-directional measurements32 B.2.1 General32 B.2.2 Gauge blocks32 B.2.3 Step gauges measured in a bi-directional manner.32 B.2.4 Ball bars / ball plates measured in a bi-directional manner 32 B.2.5 Laser interferometry with contact probing measured in a bi-direction
19、al manner 32 B.3 Uni-directional measurements (must be supplemented with bi-directional measurements).33 B.3.1 General33 B.3.2 Calibrated test length composed of uni-directional and short gauge block measurements33 B.3.3 Artefacts for uni-directional measurements .34 Annex C (informative) Alignment
20、of gauges36 C.1 General36 C.2 Parallel face gauges.36 C.3 Ball bar/ball plate gauges36 Annex D (normative) Mathematical adjustments to Low CTE artefacts .38 D.1 General38 D.2 Requirements .38 Annex E (informative) Location of the single stylus probing test Annex F (informative) Relation to the GPS m
21、atrix model F.1 Information about this part of ISO 10360 and its use F.2 Position in the GPS matrix model F.3 Related standards Bibliography 67 Note: Annexes E and F originally in the ISO Standard are omitted in the B89 Technical Reportbecause they pertain only to the location of other ISO documents
22、 and are not relevant to thisReport. Annex E (normative) Test uncertainty .40Annex F (normative) Traceability of calibrated test lengths 52Annex G (normative) Decision rule for conformance testing .54Annex H (informative) Interim testing of CMM systems .55Annex I (normative) ASME B89.4.10360.2 Data
23、sheet 65Annex J (informative) Figures 12, 13 and 14 from ISO 10360-1:2000 66vii Foreword ISO (the International Organization for Standardization) is a worldwide federation of national standards bodies (ISO member bodies). The work of preparing International Standards is normally carried out through
24、ISO technical committees. Each member body interested in a subject for which a technical committee has been established has the right to be represented on that committee. International organizations, governmental and non-governmental, in liaison with ISO, also take part in the work. ISO collaborates
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